AbstractThe direct transcription or collocation method has demonstrated notable success in the solution of trajectory optimization and optimal control problems. This approach combines a sparse nonlinear programming algorithm with a discretization of the trajectory dynamics. A challenging class of optimization problems occurs when the spacecraft trajectories are characterized by thrust levels that are very low relative to the vehicle weight. Low-thrust trajectories are demanding because realistic forces due to oblateness, aerodynamic drag, and third-body perturbions often dominate the thrust. Furthermore because the thrust is so low, significant changes to the orbits require very long duration trajectories. When a collocation method is appli...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77183/1/AIAA-2008-6617-530.pd
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76670/1/AIAA-40619-128.pd
For many optimal transfer problems it is reasonable to expect that the minimum time solution is also...
AbstractThe direct transcription or collocation method has demonstrated notable success in the solut...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
The problem of many revolution low-thrust Earth-orbit trajectory optimization is considered. The obj...
Low-thrust engines are appealing for use on both earth-based satellites and interplanetary spacecraf...
A direct adaptive scheme is presented as an alternative approach for minimum-fuel low-thrust traject...
Space missions with low-thrust propulsion systems are of appreciable interest to space agencies beca...
AbstractLow-thrust Earth-orbit transfers with 10−5-order thrust-to-weight ratios involve a large num...
Low-thrust propulsion systems are growing in popularity for both Earth orbiting satellites and scien...
Low-thrust propulsion systems are growing in popularity for both Earth orbiting satellites and scien...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77183/1/AIAA-2008-6617-530.pd
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76670/1/AIAA-40619-128.pd
For many optimal transfer problems it is reasonable to expect that the minimum time solution is also...
AbstractThe direct transcription or collocation method has demonstrated notable success in the solut...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
Space trajectory design is usually addressed as an optimal control problem. Although it relies on th...
The problem of many revolution low-thrust Earth-orbit trajectory optimization is considered. The obj...
Low-thrust engines are appealing for use on both earth-based satellites and interplanetary spacecraf...
A direct adaptive scheme is presented as an alternative approach for minimum-fuel low-thrust traject...
Space missions with low-thrust propulsion systems are of appreciable interest to space agencies beca...
AbstractLow-thrust Earth-orbit transfers with 10−5-order thrust-to-weight ratios involve a large num...
Low-thrust propulsion systems are growing in popularity for both Earth orbiting satellites and scien...
Low-thrust propulsion systems are growing in popularity for both Earth orbiting satellites and scien...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77183/1/AIAA-2008-6617-530.pd
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76670/1/AIAA-40619-128.pd
For many optimal transfer problems it is reasonable to expect that the minimum time solution is also...